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    • 2. 发明授权
    • High temperature vacuum furnace heater element support assembly
    • US09702627B2
    • 2017-07-11
    • US14120389
    • 2014-05-16
    • Robert J. WilsonMark J. Hughes
    • Robert J. WilsonMark J. Hughes
    • H05B3/66F27B5/04F27D7/06F27D11/02F27D99/00
    • F27B5/04F27D7/06F27D11/02F27D2007/066F27D2099/0008H05B3/66
    • An electrical insulating and heating element support assembly for a high temperature vacuum furnace having a threaded support rod for connecting a heating element to the insulated hot-zone support ring in an electrically non-connected position includes insulator sleeves and washers surrounding the rod in contact with a series of refractory metal washers which may include graphite and/or molybdenum as shielding liners used to protect electrical insulators from having electrical short path means due to deposition of conductive materials onto the non-conducting insulators, and the use of threaded nuts and bushings to anchor the rod and shielding arrangement within the furnace hot zone. The non-conducting insulators and washers are made from materials with high thermal and electrical resistance, such as preferably alumina or mullite, and radially surround the support rod and the heating element. The electrically non-connected shielding washers and nuts, and the rod can be made from graphite or molybdenum, and are designed to be easily disassembled in order to provide relatively easier maintenance service to the vacuum furnace. This design accomplishes the dual objective of supporting both the heating element and the high temperature insulation support ring while remaining electrically non-connected from the heating element. It also allows for variations in thickness of the furnace insulation and heating elements which is common for different furnace designs. This new stand-off assembly is designed to be easily disassembled in order to provide faster maintenance turnaround time and reuse of the stand-off hardware. Another equally important advantage of this design is the absence of holes in the support rod for the placement of pin retainers, and the elimination of the pin retainers, commonly found in prior art vacuum furnace heater element support assembly designs.
    • 3. 发明申请
    • High temperature vacuum furnace heater element support assembly
    • 高温真空炉加热器元件支撑组件
    • US20150334778A1
    • 2015-11-19
    • US14120389
    • 2014-05-16
    • Robert J. WilsonMark J. Hughes
    • Robert J. WilsonMark J. Hughes
    • H05B3/66F27D7/06F27D11/02
    • F27B5/04F27D7/06F27D11/02F27D2007/066F27D2099/0008H05B3/66
    • An electrical insulating and heating element support assembly for a high temperature vacuum furnace having a threaded support rod for connecting a heating element to the insulated hot-zone support ring in an electrically non-connected position includes insulator sleeves and washers surrounding the rod in contact with a series of refractory metal washers which may include graphite and/or molybdenum as shielding liners used to protect electrical insulators from having electrical short path means due to deposition of conductive materials onto the non-conducting insulators, and the use of threaded nuts and bushings to anchor the rod and shielding arrangement within the furnace hot zone. The non-conducting insulators and washers are made from materials with high thermal and electrical resistance, such as preferably alumina or mullite, and radially surround the support rod and the heating element. The electrically non-connected shielding washers and nuts, and the rod can be made from graphite or molybdenum, and are designed to be easily disassembled in order to provide relatively easier maintenance service to the vacuum furnace. This design accomplishes the dual objective of supporting both the heating element and the high temperature insulation support ring while remaining electrically non-connected from the heating element. It also allows for variations in thickness of the furnace insulation and heating elements which is common for different furnace designs. This new stand-off assembly is designed to be easily disassembled in order to provide faster maintenance turnaround time and reuse of the stand-off hardware. Another equally important advantage of this design is the absence of holes in the support rod for the placement of pin retainers, and the elimination of the pin retainers, commonly found in prior art vacuum furnace heater element support assembly designs.
    • 一种用于高温真空炉的电绝缘和加热元件支撑组件,其具有用于将加热元件连接到绝缘热区支撑环处于非电连接位置的螺纹支撑杆,包括围绕杆的绝缘套管和垫圈, 一系列耐火金属垫圈,其可以包括作为屏蔽衬垫的石墨和/或钼,用于保护电绝缘体由于将导电材料沉积到非导电绝缘体上而具有电短路装置,以及使用螺母和衬套 将杆和屏蔽装置锚定在炉热区内。 非导电绝缘体和垫圈由具有高耐热性和耐电性的材料制成,例如优选为氧化铝或莫来石,并径向包围支撑杆和加热元件。 电气不连接的屏蔽垫圈和螺母以及杆可以由石墨或钼制成,并且被设计成易于拆卸,以便为真空炉提供相对容易的维护服务。 该设计实现了双重目的,即在加热元件与加热元件保持电气不连接的同时支撑加热元件和高温绝缘支撑环。 它还允许炉绝缘和加热元件的厚度变化,这对于不同的炉设计是常见的。 这种新的分离组件设计为易于拆卸,以便提供更快的维护周转时间和备用硬件的重新使用。 这种设计的另一个同样重要的优点是在支撑杆中不存在用于放置销保持器的孔,以及在现有技术的真空炉加热器元件支撑组件设计中通常发现的销保持器的消除。
    • 5. 发明授权
    • Polyurethane/polycarbonate compatibility
    • 聚氨酯/聚碳酸酯相容性
    • US4980385A
    • 1990-12-25
    • US355154
    • 1989-05-22
    • Michael ScarpatiMark J. Hughes
    • Michael ScarpatiMark J. Hughes
    • C08G18/18
    • C08G18/18C08G18/1825C08G2101/0008
    • A molded flexible polyurethane composition having improved polycarbonate compatibility comprising an organic polyisocyanate, a polyol and reactive tertiary amine catalyst. This catalyst contains at least one active hydrogen and/or hydroxyl group in its structure. Another embodiment of this invention relates to a molded flexible polyurethane composition having improved polycarbonate compatibility comprising an organic polyisocyanate, a polyol, a non-reactive tertiary amine catalyst and, an amine scavenger composition which may or may not also contain reactive tertiary amine catalysts. Also disclosed are processes for making said molded flexible polyurethane compositions having improved polycarbonate compatibility.
    • 具有改进的聚碳酸酯相容性的模制柔性聚氨酯组合物,其包含有机多异氰酸酯,多元醇和反应性叔胺催化剂。 该催化剂在其结构中含有至少一个活性氢和/或羟基。 本发明的另一个实施方案涉及具有改进的聚碳酸酯相容性的模制柔性聚氨酯组合物,其包含有机多异氰酸酯,多元醇,非反应性叔胺催化剂和可以还可以不含反应性叔胺催化剂的胺清除剂组合物。 还公开了制备所述模制的柔性聚氨酯组合物具有改进的聚碳酸酯相容性的方法。
    • 7. 发明授权
    • Device for separating and removing kraeusen from beer during fermentation
    • 用于在发酵过程中从啤酒中分离和除去克雷素的装置
    • US06561078B1
    • 2003-05-13
    • US10029032
    • 2001-12-28
    • Mark J. Hughes
    • Mark J. Hughes
    • C12C500
    • C12C13/10Y10S435/812
    • A device for separating and removing kraeusen from fermenting beer. The device includes a pan having a circular bottom wall with a peripheral side wall extending upwardly therefrom. In the center of the bottom wall is a cone-shaped recess that serves as a well for the collection of particulate matter falling from suspension in kraeusen. Extending upwardly from the bottom of the recess to a height approaching that of the side wall is a tubular passageway for the upward passage of kraeusen into the pan. The recess may be covered with a screen or perforated plate upon which particulate matter can collect. An aperture is provided in the tubular passageway at the top of the recess to permit any beer carried by kraeusen into the pan to drain from the pan.
    • 一种用于从发酵啤酒中分离和除去kraeusen的装置。 该装置包括具有圆形底壁的盘,其具有从其向上延伸的周边侧壁。 在底壁的中心是一个圆锥形凹槽,用作收集从克雷温森悬浮液中掉落的颗粒物的井。 从凹部的底部向上延伸到靠近侧壁的高度的一个高度是用于向上通过kraeusen进入锅的管状通道。 该凹部可以覆盖有可以收集颗粒物质的筛网或多孔板。 在凹槽顶部的管状通道中设有一个孔口,以允许由kraeusen携带的任何啤酒进入锅中以从锅中排出。